To evaluate the feasibility of the co-digestion of food waste (FW) and landfill leachate (LL) to alleviate ammonia inhibition, a series of batch co-digestion experiments were conducted to explore the optimal substrate mixing ratio, and semi-continuous experiments were conducted to evaluate the long-tern effects of LL addition on methane generation and digestate characteristics of the anaerobic co-digestion system under ammonia stress. The optimum methane generation and digestate properties were observed when the concentration of LL in the dilution liquid in the co-digestion reactor was 40 % (v/v). Significant volatile fatty acid accumulation and lower methane yields were both observed during the long-term FW mono-digestion when the total ammonia nitrogen (TAN) concentration reached 3391.27 mg.L-1. However, stable methane generation was observed in the codigestion system, even when the TAN was 3721.59 mg.L-1, confirming that the LL alleviated the ammonia inhibition of the FW-based anaerobic digestion (AD) system. Microbial analysis of the AD reactors demonstrated that the relative abundance of Pelotomaculum was higher in the co-digestion system than in the mono-digestion system. Analysis of the phylogenetic investigation of communities by reconstruction of unobserved states (PICRUSt) confirmed the enrichment of genes involved in butyrate, propionate, and methane metabolism in the co-digestion system. In addition, analysis of the digestate characteristics (i.e., dewaterability, germination index, and heavy metals concentrations) indicated that there was no ecological risk for utilization of the digestate after long-term co-digestion operation. These results aim to provide guidance for using LL to promote the processing of FW in the future.
Jia Lin Jiane Zuo Ruofan Ji Xiaojie Chen Fenglin Liu Kaijun Wang Yunfeng Yang State Key Joint Laboratory of Environment Simulation and Pollution Control SKLESPC School of Environment Tsinghua University Beijing China
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Jia Lin Jiane Zuo Ruofan Ji Xiaojie Chen Fenglin Liu Kaijun Wang Yunfeng Yang State Key Joint Laboratory of Environment Simulation and Pollution Control SKLESPC School of Environment Tsinghua University Beijing China
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Vatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, Sweden
Lund Univ, Fac Engn, Water Resources Engn, POB 118, SE-22100 Lund, SwedenVatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, Sweden
Keucken, Alexander
Habagil, Moshe
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Vatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, SwedenVatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, Sweden
Habagil, Moshe
Batstone, Damien
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Univ Queensland, Adv Water Management Ctr, Brisbane, Qld 4072, AustraliaVatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, Sweden
Batstone, Damien
Jeppsson, Ulf
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Lund Univ, Dept Biomed Engn BME, Div Ind Elect Engn & Automat IEA, POB 118, SE-22100 Lund, SwedenVatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, Sweden
Jeppsson, Ulf
Arnell, Magnus
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Lund Univ, Dept Biomed Engn BME, Div Ind Elect Engn & Automat IEA, POB 118, SE-22100 Lund, Sweden
RISE Res Inst Sweden, Gjuterigatan 1D, SE-58273 Linkoping, SwedenVatten & Miljo I Vast AB, POB 110, SE-31122 Falkenberg, Sweden